RRC ID 78309
著者 Huang JR, Arii J, Hirai M, Nishimura M, Mori Y.
タイトル Human herpesvirus 6A nuclear matrix protein U37 interacts with heat shock transcription factor 1 and activates the heat shock response.
ジャーナル J Virol
Abstract Nascent nucleocapsids of herpesviruses acquire a primary envelope during their nuclear export by budding through the inner nuclear membrane into the perinuclear space between the inner and outer nuclear membranes. This process is mediated by a conserved viral heterodimeric complex designated the nuclear egress complex, which consists of the nuclear matrix protein and the nuclear membrane protein. In addition to its essential roles during nuclear egress, the nuclear matrix protein has been shown to interact with intracellular signaling pathway molecules including NF-κB and IFN-β to affect viral or cellular gene expression. The human herpesvirus 6A (HHV-6A) U37 gene encodes a nuclear matrix protein, the role of which has not been analyzed. Here, we show that HHV-6A U37 activates the heat shock element promoter and induces the accumulation of the molecular chaperone Hsp90. Mechanistically, HHV-6A U37 interacts with heat shock transcription factor 1 (HSF1) and induces its phosphorylation at Ser-326. We report that pharmacological inhibition of HSF1, Hsp70, or Hsp90 decreases viral protein accumulation and viral replication. Taken together, our results lead us to propose a model in which HHV-6A U37 activates the heat shock response to support viral gene expression and replication. IMPORTANCE Human herpesvirus 6A (HHV-6A) is a dsDNA virus belonging to the Roseolovirus genus within the Betaherpesvirinae subfamily. It is frequently found in patients with neuroinflammatory disease, although its pathogenetic role, if any, awaits elucidation. The heat shock response is important for cell survival under stressful conditions that disrupt homeostasis. Our results indicate that HHV-6A U37 activates the heat shock element promoter and leads to the accumulation of heat shock proteins. Next, we show that the heat shock response is important for viral replication. Overall, our findings provide new insights into the function of HHV-6A U37 in host cell signaling and identify potential cellular targets involved in HHV-6A pathogenesis and replication.
巻・号 97(9)
ページ e0071823
公開日 2023-9-28
DOI 10.1128/jvi.00718-23
PMID 37671864
PMC PMC10537701
MeSH Gene Expression Regulation, Viral HSP70 Heat-Shock Proteins / metabolism HSP90 Heat-Shock Proteins / metabolism Heat Shock Transcription Factors* / metabolism Heat-Shock Response* / genetics Herpesvirus 6, Human* / metabolism Herpesvirus 6, Human* / pathogenicity Humans Phosphorylation Promoter Regions, Genetic Signal Transduction Viral Matrix Proteins* / metabolism Virus Replication
リソース情報
研究用ヒト臍帯血幹細胞